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Original Articles

Describing the Morphology of 2H Martensite Using Group Theory Part I: Theory

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Pages 197-225 | Received 01 Apr 2003, Accepted 01 Jun 2003, Published online: 12 Aug 2010

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Read on this site (4)

F. Kosel & T. Videnic. (2007) Generalized Plasticity and Uniaxial Constrained Recovery in Shape Memory Alloys. Mechanics of Advanced Materials and Structures 14:1, pages 3-12.
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D. Roy Mahapatra & R.V. N. Melnik. (2006) Finite Element Analysis of Phase Transformation Dynamics in Shape Memory Alloys with a Consistent Landau-Ginzburg Free Energy Model. Mechanics of Advanced Materials and Structures 13:6, pages 443-455.
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K. Shahin, G.P. Zou & F. Taheri. (2005) Shape Memory Alloy Wire Reinforced Composites for Structural Damage Repairs. Mechanics of Advanced Materials and Structures 12:6, pages 425-435.
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K.M. LIEW & J.J. ZHU. (2004) Describing the Morphology of 2H Martensite Using Group Theory Part II: Case Study. Mechanics of Advanced Materials and Structures 11:3, pages 227-248.
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Articles from other publishers (5)

Vikash K. Jha & D. Roy Mahapatra. (2009) Constitutive modeling of shape memory alloy wire with non-local rate kinetics. Continuum Mechanics and Thermodynamics 21:1, pages 1-15.
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Tomaz Videnic, Franc Kosel, Viktor Sajn & Miha Brojan. (2007) Biaxial Constrained Recovery in Shape Memory Alloy Rings. Journal of Intelligent Material Systems and Structures 19:8, pages 861-874.
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J J Zhu, N G Liang, M Cai, K M Liew & W M Huang. (2008) Theory of phase transformation and reorientation in single crystalline shape memory alloys. Smart Materials and Structures 17:1, pages 015041.
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M. Cai, S.C. Langford, J.T. Dickinson, Gang Xiong, T.C. Droubay, A.G. Joly, K.M. Beck & W.P. Hess. (2007) An in situ study of the martensitic transformation in shape memory alloys using photoemission electron microscopy. Journal of Nuclear Materials 361:2-3, pages 306-312.
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M. Cai, S. C. Langford, M. Wu, W. Huang, G. Xiong, T. C. Droubay, A. G. Joly, K. M. Beck, W. P. Hess & J. T. Dickinson. (2006) Study of Martensitic Phase Transformation in a NiTiCu Thin‐Film Shape‐Memory Alloy Using Photoelectron Emission Microscopy. Advanced Functional Materials 17:1, pages 161-167.
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